Blood flow changes in the ovarian and uterine arteries during the normal menstrual cycle
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This paper investigated alterations in blood flow within the ovarian and uterine arteries throughout the typical menstrual cycle.
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Abstract
ObjectiveOur purpose was to study the hemodynamic changes in the uterine and intraovarian vessels during the normal menstrual cycle and to relate the vascular changes to hormonal index values.Study designSeven women who had bilateral tubal patency, a normal pelvis on laparoscopy, and regular ovulatory cycles underwent serial transvaginal ultrasonography on menstrual cycle day 2, daily from estimated day of ovulation-6, hourly from estimated day of ovulation-2, or when the mean follicular diameter was > 16 mm (whichever was earlier) until 6 hours after follicular rupture and once 7 days after follicular rupture. At each scan uterine and intraovarian blood flow was assessed with transvaginal color Doppler ultrasonography and serum concentrations of follicle-stimulating hormone, luteinizing hormone, estradiol, and progesterone assessed by fluoroimmunoassay.ResultsIn one case there was evidence of a luteinized unruptured follicle and the patient was therefore excluded from analysis. In the other six women there was spontaneous ovulation at a mean of 39 hours after the onset of the luteinizing hormone surge. On the side with the dominant follicle, follicular and ovarian stromal peak systolic blood flow velocity rose significantly during the menstrual cycle with no significant change in pulsatility index. The changes in blood flow velocity correlated significantly with changes in serum follicle-stimulating hormone, luteinizing hormone and progesterone concentrations. There were no significant changes in either blood flow velocity or pulsatility index in the contralateral ovary. Uterine artery time-averaged maximum velocity on the side of the developing ovarian follicle increased during the menstrual cycle with no significant change in the contralateral vessel. Uterine artery pulsatility index on the side of the developing follicle declined during the midluteal phase and was significantly lower than on the contralateral side. The changes in time-averaged maximum velocity correlated with the changes in serum estradiol and progesterone concentrations.ConclusionThe vascular changes in the wall of the dominant ovarian follicle and ovarian stroma during the menstrual cycle are consistent with activity of angiogenic-like factors. The decline in uterine artery resistance during the midluteal phase may reflect optimal vascularity for implantation of the blastocyst.
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Cited by (15)
- Novel application to evaluate endometrial blood flow using transvaginal superb microvascular imaging: A preliminary study describing physiological changes from ovulation to mid‐luteal phase 2023
- Pelvic Pain Arising from Pelvic Congestion Syndrome 2021
- Effect of menstrual phase on the surgical treatment of ovarian cysts 2017
- Pelvic Imaging in Reproductive Endocrinology 2009
- Doppler assessment of uterine blood flow in recurrent pregnancy loss 2007
- Assessment of changes in endometrial and subendometrial volume and vascularity during the normal menstrual cycle using three‐dimensional power Doppler ultrasound 2006
- A dominant ovarian follicle induces unilateral changes in the origin of the blood supply to the tubal corner of the uterus 2005
- A Reduction in Intraovarian Arterial Blood Flow Resistance After Ovulation is Necessary to Achieve Pregnancy in Natural Cycle 2005
- Quantifying the changes in endometrial vascularity throughout the normal menstrual cycle with three-dimensional power Doppler angiography 2004
- Progestin-regulated expression of tissue factor in decidual cells: implications in endometrial hemostasis, menstruation and angiogenesis 2003
- Differential Effects of Thrombin and Hypoxia on Endometrial Stromal and Glandular Epithelial Cell Vascular Endothelial Growth Factor Expression 2002
- Is aspirin all it is cracked up to be—reproducibility of transvaginal color Doppler ultrasonography for ovarian and uterine vessels? 2000
- Regional hemodynamic adaptation during the menstrual cycle*1 1999
- Regional Hemodynamic Adaptation During the Menstrual Cycle 1999
- Acute effects of a transdermal nitric oxide donor on perifollicular and intrauterine blood flow 1998
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